» Articles » PMID: 11536448

Cell-specific Expression of Manganese Superoxide Dismutase Protein in the Lungs of Patients with Respiratory Distress Syndrome, Chronic Lung Disease, or Persistent Pulmonary Hypertension

Overview
Date 2001 Sep 6
PMID 11536448
Citations 13
Authors
Affiliations
Soon will be listed here.
Abstract

The developmental profile of manganese superoxide dismutase (MnSOD) and its regulation in hyperoxia vary between species. We hypothesized that MnSOD increases in human lung in response to oxygen treatment, although this response could be restricted to certain cell types and depend on gestational age. Therefore, the cell-specific expression of pulmonary immunoreactive MnSOD protein was investigated during development, and in patients with respiratory distress syndrome (RDS), chronic lung disease (CLD), or persistent pulmonary hypertension (PPHN). Throughout ontogenesis, all cell types expressed MnSOD, but the most intense positivity was found in bronchiolar epithelium and (pre-) type-II pneumocytes. MnSOD protein did not increase during development. The MnSOD staining pattern in arterial endothelium was more intense in RDS patients than in age-matched controls, but this may be related to induction of MnSOD by increased blood flow rather than by oxygen. MnSOD expression in other cell types of RDS, CLD, or PPHN patients did not differ from that in age-matched controls. We conclude that, in terms of mitochondrial enzymatic superoxide scavenging capacity, preterm infants are not more vulnerable than term infants to oxygen-induced lung injury at physiological oxygen concentrations. However, the inability to induce MnSOD in response to oxygen treatment may result in a poor outcome.

Citing Articles

Crosstalk between trace elements and T-cell immunity during early-life health in pigs.

Jin S, He L, Yang C, He X, Chen H, Feng Y Sci China Life Sci. 2023; 66(9):1994-2005.

PMID: 37300752 DOI: 10.1007/s11427-022-2339-0.


Hypoxemia events in preterm neonates are associated with urine oxidative biomarkers.

Raffay T, Di Fiore J, Chen Z, Sanchez-Illana A, Vento M, Pineiro-Ramos J Pediatr Res. 2023; 94(4):1444-1450.

PMID: 37188801 PMC: 11459675. DOI: 10.1038/s41390-023-02646-7.


Exogenous Superoxide Dismutase Mimetic Without Scavenging H2O2 Causes Photoreceptor Damage in a Rat Model for Oxygen-Induced Retinopathy.

Jivabhai Patel S, Bany-Mohammed F, McNally L, Valencia G, Lazzaro D, Aranda J Invest Ophthalmol Vis Sci. 2015; 56(3):1665-77.

PMID: 25670494 PMC: 4354243. DOI: 10.1167/iovs.14-15321.


Transfusion related morbidity in premature babies: Possible mechanisms and implications for practice.

Collard K World J Clin Pediatr. 2014; 3(3):19-29.

PMID: 25254181 PMC: 4162441. DOI: 10.5409/wjcp.v3.i3.19.


The role of genetic polymorphisms in antioxidant enzymes and potential antioxidant therapies in neonatal lung disease.

Dani C, Poggi C Antioxid Redox Signal. 2014; 21(13):1863-80.

PMID: 24382101 PMC: 4203110. DOI: 10.1089/ars.2013.5811.